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A fiber-optic system for recording skin conductance in the MRI scanner

机译:用于在MRI扫描仪中记录皮肤电导的光纤系统

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The acquisition of the skin conductance response (SCR) during functional magnetic resonance imaging (fMRI) raises significant safety issues, as well as practical ones, which need to be addressed in order for these experiments to be conducted safely and successfully. Metallic and conductive wires in the presence of time-varying gradient magnetic fields such as those present in fMRI experiments may induce heating, as well as electric fields, in these components and, if in contact with the subject, could produce severe burns and electric shocks. Moreover, these metallic and conductive components can significantly distort the magnetic field, resulting in image artifacts. A system for recording the SCR in humans simultaneously with fMRI is presented. The device is a fiber-optic-based transducer, which records the SCR from two fingers of the same hand, using electrodes containing inline radio frequency (RF) suppression filters and protective resistive loads. The fiber-optic SCR transducer was tested using 1.5 and 3.0 Tesla MRI scanners running EPI sequences. This system was able to safely record SCRs free of RF interference during an fMRI experiment, and the fiber-optic design of the transducer eliminated any artifacts on the MRI scan.
机译:功能性磁共振成像(fMRI)期间皮肤电导响应(SCR)的采集提出了重要的安全问题以及实际问题,必须解决这些问题才能使这些实验安全,成功地进行。金属线和导电线存在时变梯度磁场(例如功能磁共振成像实验中存在的磁场)时,可能会在这些组件中感应加热以及产生电场,如果与受试者接触,可能会产生严重的灼伤和电击。此外,这些金属和导电成分会显着扭曲磁场,从而导致图像伪影。提出了一种在功能磁共振成像中同时记录人体内SCR的系统。该设备是基于光纤的传感器,它使用包含串联射频(RF)抑制滤波器和保护性电阻性负载的电极记录同一只手的两个手指上的SCR。使用运行EPI序列的1.5和3.0 Tesla MRI扫描仪测试了光纤SCR换能器。该系统能够在fMRI实验期间安全地记录SCR,而不受RF干扰,换能器的光纤设计消除了MRI扫描中的任何伪影。

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